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H3K4me3 inversely correlates with DNA methylation at a large class of non-CpG-island-containing start sites
BACKGROUND: In addition to mutations, epigenetic silencing of genes has been recognized as a fundamental mechanism that promotes human carcinogenesis. To date, characterization of epigenetic gene silencing has largely focused on genes in which silencing is mediated by hypermethylation of promoter-as...
Autores principales: | , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
BioMed Central
2012
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3506913/ https://www.ncbi.nlm.nih.gov/pubmed/22640407 http://dx.doi.org/10.1186/gm346 |
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author | Balasubramanian, Dheepa Akhtar-Zaidi, Batool Song, Lingyun Bartels, Cynthia F Veigl, Martina Beard, Lydia Myeroff, Lois Guda, Kishore Lutterbaugh, James Willis, Joseph Crawford, Gregory E Markowitz, Sanford D Scacheri, Peter C |
author_facet | Balasubramanian, Dheepa Akhtar-Zaidi, Batool Song, Lingyun Bartels, Cynthia F Veigl, Martina Beard, Lydia Myeroff, Lois Guda, Kishore Lutterbaugh, James Willis, Joseph Crawford, Gregory E Markowitz, Sanford D Scacheri, Peter C |
author_sort | Balasubramanian, Dheepa |
collection | PubMed |
description | BACKGROUND: In addition to mutations, epigenetic silencing of genes has been recognized as a fundamental mechanism that promotes human carcinogenesis. To date, characterization of epigenetic gene silencing has largely focused on genes in which silencing is mediated by hypermethylation of promoter-associated CpG islands, associated with loss of the H3K4me3 chromatin mark. Far less is known about promoters lacking CpG-islands or genes that are repressed by alternative mechanisms. METHODS: We performed integrative ChIP-chip, DNase-seq, and global gene expression analyses in colon cancer cells and normal colon mucosa to characterize chromatin features of both CpG-rich and CpG-poor promoters of genes that undergo silencing in colon cancer. RESULTS: Epigenetically repressed genes in colon cancer separate into two classes based on retention or loss of H3K4me3 at transcription start sites. Quantitatively, of transcriptionally repressed genes that lose H3K4me3 in colon cancer (K4-dependent genes), a large fraction actually lacks CpG islands. Nonetheless, similar to CpG-island containing genes, cytosines located near the start sites of K4-dependent genes become DNA hypermethylated, and repressed K4-dependent genes can be reactivated with 5-azacytidine. Moreover, we also show that when the H3K4me3 mark is retained, silencing of CpG island-associated genes can proceed through an alternative mechanism in which repressive chromatin marks are recruited. CONCLUSIONS: H3K4me3 equally protects from DNA methylation at both CpG-island and non-CpG island start sites in colon cancer. Moreover, the results suggest that CpG-rich genes repressed by loss of H3K4me3 and DNA methylation represent special instances of a more general epigenetic mechanism of gene silencing, one in which gene silencing is mediated by loss of H3K4me3 and methylation of non-CpG island promoter-associated cytosines. |
format | Online Article Text |
id | pubmed-3506913 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2012 |
publisher | BioMed Central |
record_format | MEDLINE/PubMed |
spelling | pubmed-35069132012-11-28 H3K4me3 inversely correlates with DNA methylation at a large class of non-CpG-island-containing start sites Balasubramanian, Dheepa Akhtar-Zaidi, Batool Song, Lingyun Bartels, Cynthia F Veigl, Martina Beard, Lydia Myeroff, Lois Guda, Kishore Lutterbaugh, James Willis, Joseph Crawford, Gregory E Markowitz, Sanford D Scacheri, Peter C Genome Med Research BACKGROUND: In addition to mutations, epigenetic silencing of genes has been recognized as a fundamental mechanism that promotes human carcinogenesis. To date, characterization of epigenetic gene silencing has largely focused on genes in which silencing is mediated by hypermethylation of promoter-associated CpG islands, associated with loss of the H3K4me3 chromatin mark. Far less is known about promoters lacking CpG-islands or genes that are repressed by alternative mechanisms. METHODS: We performed integrative ChIP-chip, DNase-seq, and global gene expression analyses in colon cancer cells and normal colon mucosa to characterize chromatin features of both CpG-rich and CpG-poor promoters of genes that undergo silencing in colon cancer. RESULTS: Epigenetically repressed genes in colon cancer separate into two classes based on retention or loss of H3K4me3 at transcription start sites. Quantitatively, of transcriptionally repressed genes that lose H3K4me3 in colon cancer (K4-dependent genes), a large fraction actually lacks CpG islands. Nonetheless, similar to CpG-island containing genes, cytosines located near the start sites of K4-dependent genes become DNA hypermethylated, and repressed K4-dependent genes can be reactivated with 5-azacytidine. Moreover, we also show that when the H3K4me3 mark is retained, silencing of CpG island-associated genes can proceed through an alternative mechanism in which repressive chromatin marks are recruited. CONCLUSIONS: H3K4me3 equally protects from DNA methylation at both CpG-island and non-CpG island start sites in colon cancer. Moreover, the results suggest that CpG-rich genes repressed by loss of H3K4me3 and DNA methylation represent special instances of a more general epigenetic mechanism of gene silencing, one in which gene silencing is mediated by loss of H3K4me3 and methylation of non-CpG island promoter-associated cytosines. BioMed Central 2012-05-28 /pmc/articles/PMC3506913/ /pubmed/22640407 http://dx.doi.org/10.1186/gm346 Text en Copyright ©2012 Balasubramanian et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Research Balasubramanian, Dheepa Akhtar-Zaidi, Batool Song, Lingyun Bartels, Cynthia F Veigl, Martina Beard, Lydia Myeroff, Lois Guda, Kishore Lutterbaugh, James Willis, Joseph Crawford, Gregory E Markowitz, Sanford D Scacheri, Peter C H3K4me3 inversely correlates with DNA methylation at a large class of non-CpG-island-containing start sites |
title | H3K4me3 inversely correlates with DNA methylation at a large class of non-CpG-island-containing start sites |
title_full | H3K4me3 inversely correlates with DNA methylation at a large class of non-CpG-island-containing start sites |
title_fullStr | H3K4me3 inversely correlates with DNA methylation at a large class of non-CpG-island-containing start sites |
title_full_unstemmed | H3K4me3 inversely correlates with DNA methylation at a large class of non-CpG-island-containing start sites |
title_short | H3K4me3 inversely correlates with DNA methylation at a large class of non-CpG-island-containing start sites |
title_sort | h3k4me3 inversely correlates with dna methylation at a large class of non-cpg-island-containing start sites |
topic | Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3506913/ https://www.ncbi.nlm.nih.gov/pubmed/22640407 http://dx.doi.org/10.1186/gm346 |
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